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General procedure to initialize the cyclic soil water balance by the Thornthwaite and Mather method.

机译:用Thornthwaite and Mather方法初始化循环土壤水平衡的一般程序。

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摘要

The original Thornthwaite and Mather method, proposed in 1955 to calculate a climatic monthly cyclic soil water balance, is frequently used as an iterative procedure due to its low input requirements and coherent estimates of water balance components. Using long term data sets to establish a characteristic water balance of a location, the initial soil water storage is generally assumed to be at field capacity at the end of the last month of the wet season, unless the climate is (semi-) arid when the soil water storage is lower than the soil water holding capacity. To close the water balance, several iterations might be necessary, which can be troublesome in many situations. For (semi-) arid climates with one dry season, Mendonca derived in 1958 an equation to quantify the soil water storage monthly at the end of the last month of the wet season, which avoids iteration procedures and closes the balance in one calculation. The cyclic daily water balance application is needed to obtain more accurate water balance output estimates. In this note, an equation to express the water storage for the case of the occurrence of more than one dry season per year is presented as a generalization of Mendonca's equation, also avoiding iteration procedures.
机译:最初的Thornthwaite and Mather方法于1955年提出,用于计算气候月度循环土壤水量平衡,由于其投入量少且对水平衡成分的估计很一致,因此经常被用作迭代过程。使用长期数据集来建立位置的特征性水平衡,通常假定在潮湿季节的最后一个月末,土壤的初始储水量为田间持水量,除非气候干旱(半干旱),土壤储水量低于土壤持水量。要关闭水平衡,可能需要进行几次迭代,这在许多情况下可能很麻烦。对于具有一个干旱季节的(半)干旱气候,Mendonca于1958年推导了一个公式,用于在潮湿季节的最后一个月月末每月对土壤水存储量进行量化,从而避免了迭代程序,并通过一次计算来关闭了平衡。需要周期性的每日水平衡应用程序来获得更准确的水平衡产量估算。在本说明中,作为Mendonca方程的推广,提出了一个方程式,该方程式表示每年发生多个旱季的情况下的蓄水量,同时也避免了迭代程序。

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